Young-Min Kim

About Young-Min Kim

Young-Min Kim, With an exceptional h-index of 41 and a recent h-index of 36 (since 2020), a distinguished researcher at Sungkyunkwan University, specializes in the field of Electron Microscopy, Scanning Transmission Electron Microscopy, Electron Energy Loss Spectroscopy.

His recent articles reflect a diverse array of research interests and contributions to the field:

Phase Stability of Perovskite Oxide Electrodes under Operating Condition in Solid Oxide Fuel Cell

An impermeable copper surface monolayer with high-temperature oxidation resistance

Polymorphic Kondo Effects Driven by Spin Lattice Coupling in VTe2

Freestanding Oxide Membranes for Epitaxial Ferroelectric Heterojunctions

Nanoscale Patterning on Layered MoS2 with Stacking-Dependent Morphologies and Optical Tunning for Phototransistor applications

Fine-Tuned Synthesis for Reducing Residual Lithium in Ni-Rich Cathode Materials for Lithium-Ion Batteries

Se-Vacancy Healing with Substitutional Oxygen in WSe2 for High-Mobility p-Type Field-Effect Transistors

Improving Electrocatalytic Activity of MoO3 for the Oxygen Evolution Reaction by Incorporation of Li Ions

Young-Min Kim Information

University

Position

Department of Energy Science (SKKU)

Citations(all)

6713

Citations(since 2020)

4686

Cited By

3609

hIndex(all)

41

hIndex(since 2020)

36

i10Index(all)

122

i10Index(since 2020)

107

Email

University Profile Page

Google Scholar

Young-Min Kim Skills & Research Interests

Electron Microscopy

Scanning Transmission Electron Microscopy

Electron Energy Loss Spectroscopy

Top articles of Young-Min Kim

Phase Stability of Perovskite Oxide Electrodes under Operating Condition in Solid Oxide Fuel Cell

Chemistry of Materials

2024/3/11

Young-Min Kim
Young-Min Kim

H-Index: 26

Donghwa Lee
Donghwa Lee

H-Index: 24

An impermeable copper surface monolayer with high-temperature oxidation resistance

2024/3/6

Polymorphic Kondo Effects Driven by Spin Lattice Coupling in VTe2

Advanced Functional Materials

2024

Freestanding Oxide Membranes for Epitaxial Ferroelectric Heterojunctions

ACS nano

2023/7/5

Nanoscale Patterning on Layered MoS2 with Stacking-Dependent Morphologies and Optical Tunning for Phototransistor applications

Materials Today Nano

2023/6/28

Fine-Tuned Synthesis for Reducing Residual Lithium in Ni-Rich Cathode Materials for Lithium-Ion Batteries

ACS Applied Energy Materials

2023/5/24

Se-Vacancy Healing with Substitutional Oxygen in WSe2 for High-Mobility p-Type Field-Effect Transistors

ACS nano

2023/5/1

Improving Electrocatalytic Activity of MoO3 for the Oxygen Evolution Reaction by Incorporation of Li Ions

ACS Materials Letters

2023/3/17

Zn-Ion Transporting, In Situ Formed Robust Solid Electrolyte Interphase for Stable Zinc Metal Anodes over a Wide Temperature Range

ACS Energy Letters

2023/2/27

Ultrahigh dielectric permittivity in oxide ceramics by hydrogenation

Science Advances

2023/2/24

Machine-learning-assisted analysis of transition metal dichalcogenide thin-film growth

Nano Convergence

2023/2/20

Coherent consolidation of trillions of nucleations for mono-atom step-level flat surfaces

Nature Communications

2023/2/8

Monolayer-interface-driven strain-free heteroepitaxy for single-crystal Ag thin films

2023/1/17

Negatively charged platinum nanoparticles on dititanium oxide electride for ultra-durable electrocatalytic oxygen reduction

Energy & Environmental Science

2023

Surface distortion of FeRu nanoparticles improves the hydrogen evolution reaction performance in alkaline media

Nanoscale

2023

Chemical analysis of carbonaceous particles inside Cu wire molten by electrical arcing

Carbon

2023

Young-Min Kim
Young-Min Kim

H-Index: 26

Seong Chu Lim
Seong Chu Lim

H-Index: 26

Ni-rich cathode material with isolated porous layer hindering crack propagation under 4.5 V high cut-off voltage cycling

Chemical Engineering Journal

2023

1T’RexMo1− xS2–2H MoS2 Lateral Heterojunction for Enhanced Hydrogen Evolution Reaction Performance

Advanced Functional Materials

2023

Boosted Heterogeneous Catalysis by Surface‐Accumulated Excess Electrons of Non‐Oxidized Bare Copper Nanoparticles on Electride Support

Advanced Science

2023/1

Enhanced selective photocatalytic oxidation of a bio-derived platform chemical with vacancy-induced core-shell anatase TiO2 nanoparticles

Applied Catalysis B: Environmental

2023

Young-Min Kim
Young-Min Kim

H-Index: 26

See List of Professors in Young-Min Kim University(Sungkyunkwan University)

Co-Authors

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